US7770251B2 - Method and device for cleaning teeth - Google Patents
Method and device for cleaning teeth Download PDFInfo
- Publication number
- US7770251B2 US7770251B2 US10/872,016 US87201604A US7770251B2 US 7770251 B2 US7770251 B2 US 7770251B2 US 87201604 A US87201604 A US 87201604A US 7770251 B2 US7770251 B2 US 7770251B2
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- cleaning tool
- cleaning
- section
- coding
- handle
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61C—DENTISTRY; APPARATUS OR METHODS FOR ORAL OR DENTAL HYGIENE
- A61C17/00—Devices for cleaning, polishing, rinsing or drying teeth, teeth cavities or prostheses; Saliva removers; Dental appliances for receiving spittle
- A61C17/16—Power-driven cleaning or polishing devices
- A61C17/22—Power-driven cleaning or polishing devices with brushes, cushions, cups, or the like
- A61C17/221—Control arrangements therefor
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61C—DENTISTRY; APPARATUS OR METHODS FOR ORAL OR DENTAL HYGIENE
- A61C17/00—Devices for cleaning, polishing, rinsing or drying teeth, teeth cavities or prostheses; Saliva removers; Dental appliances for receiving spittle
- A61C17/16—Power-driven cleaning or polishing devices
-
- A—HUMAN NECESSITIES
- A46—BRUSHWARE
- A46B—BRUSHES
- A46B5/00—Brush bodies; Handles integral with brushware
- A46B5/0095—Removable or interchangeable brush heads
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61C—DENTISTRY; APPARATUS OR METHODS FOR ORAL OR DENTAL HYGIENE
- A61C17/00—Devices for cleaning, polishing, rinsing or drying teeth, teeth cavities or prostheses; Saliva removers; Dental appliances for receiving spittle
- A61C17/16—Power-driven cleaning or polishing devices
- A61C17/22—Power-driven cleaning or polishing devices with brushes, cushions, cups, or the like
- A61C17/222—Brush body details, e.g. the shape thereof or connection to handle
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61C—DENTISTRY; APPARATUS OR METHODS FOR ORAL OR DENTAL HYGIENE
- A61C2204/00—Features not otherwise provided for
- A61C2204/005—Features not otherwise provided for using chip tag or any electronic identification mean, e.g. RFID
Definitions
- This invention relates to a method for cleaning teeth by means of an electric dental cleaning device having coupled to its handle section various cleaning tools for the individual tooth cleaning of the users of the dental cleaning device.
- the present invention further relates to the handle section of an electric dental cleaning device, in particular toothbrush, which possesses a coupling section for the coupling of a variety of cleaning tools, a drive mechanism for driving the respective coupled cleaning tool, and a control device.
- the present invention also relates to the cleaning tools, particularly brush attachments, for such a handle section.
- Dental cleaning devices such as electric toothbrushes or electric oral irrigators customarily have a grip or a handle section to which a variety of cleaning tools such as brush attachments are attachable, thus enabling several users to use the dental cleaning device with their own, user-related cleaning tools.
- electric toothbrushes are known, for example, from DE 19627752 A1 or EP 0624079 B1.
- the respective user has the possibility of individually adjusting dental cleaning parameters such as, for example, the strength of the water jet of oral irrigators or the speed of the brush attachments of electric toothbrushes.
- each hand toothbrush is assigned its own accommodating slot in a housing, so that each toothbrush can be assigned an individual brushing time signal via the housing.
- This arrangement is very elaborate from the manufacturing point of view without providing for the detection and storage of user-specific data of the tooth cleaning operation.
- Such dental cleaning devices are capable of improvement on many counts.
- it is desirable to further improve the possible adaptation to the users as well as the user friendliness.
- the invention aims to further improve adaptation to the individual users as well as the user friendliness.
- this object is substantially accomplished in a tooth cleaning method of the type initially referred to in that a coding provided on the respective cleaning tool used is detected by the handle section preferably automatically and that, in dependence the detected coding, the handle section controls dental cleaning parameters preferably automatically and/or detects user-specific dental cleaning data preferably automatically.
- the object referred to is substantially accomplished in a handle section of an electric dental cleaning device of the type initially referred to in that the handle section possesses a coding detection device to detect an individual coding of the particular cleaning tool attached to the handle section, as well as a control device for the control of at least one function of the dental cleaning device in response to the detected coding.
- the cleaning tool of the type initially referred to the object is accomplished in that it possesses a magnetic, electrical, capacitive, electromagnetic and/or mechanical coding device or a combination of such coding devices.
- control device is capable of adapting operating parameters such as cleaning frequency, cleaning speed and cleaning time or threshold value or desired range of application pressure automatically to the individual user identified.
- operating parameters such as cleaning frequency, cleaning speed and cleaning time or threshold value or desired range of application pressure automatically to the individual user identified.
- a variety of user profiles can be set and stored, one of which is put to use by the control device after the coding of the cleaning tool being used has been detected at the beginning of the cleaning operation and, hence, the respective user has been established.
- the coding detection device issues a corresponding signal to the control device.
- electric toothbrushes it is possible, for example, for the motor speed to be reduced from the usual speed for adults when a child is the user, so that a gentler tooth cleaning operation is performed for the child.
- control device may vary, responsive to a signal from the coding detection device, the duration of a timer according to the user identified, setting the timer to two minutes for children and to three minutes for adults, for example.
- the type of timer signal could also be modified, as by selecting a tune for children and a buzzer tone for adults.
- the handle section hence detects, i.e., identifies, the individual user indirectly by referring to the cleaning tool used or its coding because each user is assigned to one or more cleaning tools of his or her own.
- the cleaning tools which otherwise may be of identical construction, may have user-specific coding elements.
- cleaning tools with chemical additives are used, their “ use by” date can be identified by the date of manufacture hidden in the coding. Predetermined cleaning or maintenance intervals can also be indicated.
- the cleaning tool is coded by its shape. It may possess one or several shaped bodies which are connected to the body of the cleaning tool fixedly or formed integrally therewith and lie in the range of detection of the coding detection device of the handle section when the cleaning tool is coupled to the handle section.
- the coding may embody a specific geometrical outer contour and/or a specific spatial arrangement of the shaped body relative to the coupling section of the cleaning tool and ultimately to the coding detection device on the handle section. Detection of the shaped body or bodies may be performed in noncontacting fashion using, for example, light barriers or the like.
- the coding device of each cleaning tool is brought into mechanical contact with the coding detection device, enabling it to read the coding. This results in a particularly straightforward construction.
- the handle section may include a scanning device for scanning the coding provided on the respective cleaning tool being used.
- the handle section may include a movable or deformable sensing element that is moved or deformed by the mechanical coding of the cleaning tool as the latter is being seated onto the handle section.
- the sensing element is moved or deformed by a predetermined amount or in a predetermined direction.
- the sensing element produces a signal responsive to the movement or deformation so that the coding can be detected.
- the sensing element may also be configured in such manner that it senses a force that the coding exerts as the cleaning tool is being, seated onto the handle section. This can be accomplished, for example, by a piezoelectric design of the sensing element in which the sensing element is active itself to deliver a signal.
- the sensing element may be configured in such a manner that it is deformed to different degrees or moved in different directions responsive to the coding of the attached cleaning tool, correspondingly closing different contacts or a different number of contacts.
- the sensing element or sensing elements may be arranged so as to be freely accessible. In this arrangement the sensing element may be brought into operative association directly with a corresponding coding element of the cleaning tool. In an advantageous embodiment of the invention the sensing element is indirectly actuatable.
- the sensing element may be disposed in the interior of a housing of the handle section which may have a deformable portion, for example in the form of a soft plastic portion, through which the sensing element can be actuated. This enables a sealed, fluid-tight construction of the handle section.
- the motion sensor may operate optically, for example, in the manner of a light barrier. It may also detect the force exerted on the probe element by a respective coding. Preferably a sensing element of the type described in the foregoing may find application, which in this case is actuated indirectly, that is, through the probe element.
- the probe element is the drive shaft of the drive mechanism arranged in the handle section for driving the cleaning tool.
- the drive shaft may be mounted in longitudinally displaceable fashion so that it is pushed into the interior of the handle section by the coding of the cleaning tool as it is being seated onto the handle section.
- the use of the drive shaft as probe element obviates the need for any specific additional arrangements with regard to the sealing of the handle section.
- the engagement surface on the handle section may be disposed directly on the sensing element previously described or, alternatively, on the probe element likewise described in the foregoing or like reacting member, in particular on the drive shaft of the handle section.
- the actuating surface is preferably provided on a drive shaft section of the drive shaft provided in the cleaning tool. This arrangement is particularly advantageous because it makes use of the already existing coupling sections provided for the coupling of cleaning tool and handle section to detect the respective cleaning tool, thus obviating the need to provide and process additional mechanical coupling sections.
- the coding detection device is of the noncontacting type. This has the advantage of avoiding malfunctions due to contaminated contact surfaces or wear resulting from frequent attachment and disengagement operations.
- the handle section may include a signal receiver or reacting member for receiving a coded signal from the cleaning tool.
- the handle section may also possess a signal transmitter or acting member emitting an interrogation or activation signal to the cleaning tool that responds by sending the coded signal back.
- the emission of the coded signal by the cleaning tool may take place actively by a corresponding signal transmitter.
- passive reflection to take place on the cleaning tool, which produces a corresponding coding of the signal.
- the coding of the cleaning tools and the corresponding detection of such coding may be implemented in a further variety of ways.
- the magnetic coding of the cleaning tool may take place by introducing an individually different number of magnetic particles as acting member into a portion of the cleaning tool.
- the magnetic sensor may be of different configurations.
- the handle section includes as reacting member a Hall sensor that provides an electrical signal corresponding to the magnetic coding of the respective cleaning tool.
- the handle section may include an LC oscillator that is detuned by the magnetic coding of the attached cleaning tool, thus supplying different frequencies assignable to the individual users.
- Another advantageous embodiment of the invention resides in the provision of reed contacts on the handle section that are actuated individually when the cleaning tools are attached to the handle section. Depending on the combination of contacts actuated, a specific user can be identified.
- provision may be made for an optical sensor for detecting an optical coding of the respective cleaning tool attached to the handle section.
- optical coding a color code may be provided on the cleaning tool that is identified by a color sensor.
- the handle section may also be equipped with one or several optical waveguides exiting from the handle section and emitting an optical signal.
- the light signal delivered to the cleaning tool is coded by the tool and returned to the handle section which receives this coded signal by means of a corresponding sensor or detector and converts it, receiving it by means of corresponding optical waveguides and transmitting it to a corresponding sensor.
- the coding may take place by defined interruption or partial obstruction of the optical waveguides exiting from the handle section.
- the light exiting from the handle section through the optical waveguide can be reflected differently by the toothbrush. A specific user can be identified depending on the intensity of the reflection.
- a capacitive sensor for detecting a capacitive coding of the respective cleaning tool attached.
- the handle section may have two or more capacitor plates whose capacitance is varied by the introduction of a dielectric provided on the cleaning tool.
- the coding of the cleaning tools may be performed by different dielectric portions on the respective cleaning tool. A specific user is then identifiable in accordance with the variation in capacitance.
- a radio device for detecting the respective cleaning tool attached by means of electromagnetic waves.
- a transponder may be associated with the cleaning tool.
- the handle section initially emits electromagnetic waves for energy supply to the transponder.
- the transponder stores the energy and sends an individual identification back to a detector in the handle section which detects it and correspondingly identifies the respective user or cleaning tool.
- the characteristic features of the cleaning tool thus include the provision of a magnetic, electrical, capacitive, electromagnetic and/or mechanical coding device.
- Another characteristic feature may include the provision of a signal receiver for receiving a signal from the dental cleaning device and a signal transmitter for transmitting a coded signal to the dental cleaning device, with a coding device being inserted between the signal receiver and the signal transmitter for coding the received signal.
- the coding device is preferably constructed as an integral part of the cleaning tool. However, it can also be designed as a separate component suitable for detachment from the remaining part of the cleaning tool or for replacement. This affords the advantage of requiring only a single mold for the manufacture of the cleaning tool. By mounting the separate coding device the cleaning tools are coded on an individual basis and assignable to a particular user.
- the coding device is arranged preferably in the area of the connection between the cleaning tool and the handle section. This facilitates the reading of the coding by the recognition device on the handle section.
- the coding device may be integrated in a ring arranged at the end of the cleaning tool close to the handle section, being in particular snap-fittable thereto by positive engagement therewith.
- the various configurations of the recognition devices may be provided singularly or in combination. The same applies to the various configurations of the coding device on the cleaning tool.
- the cleaning tools have an acting member or a coding communicating with a reacting member or a coding detection device in the handle section.
- the acting member(s) or coding device in the cleaning tool it is possible to inform the handle section, by way of communication between the coding device and the coding detection device, which user-specific cleaning tool, be it an interproximal cleaning tool, a toothbrush or some other cleaning tool, is currently plugged on the handle section.
- This possibility of detecting the user-specific or cleaning-tool-specific data of the particular cleaning tool attached to the handle section provides the prerequisite for the handle section to be able to operate the attached cleaning tool on a user- or cleaning-tool-specific basis.
- FIG. 1 is a perspective view of an electric toothbrush having a handle section and a brush attachment attachable thereto;
- FIG. 2 is a schematic longitudinal sectional view of the handle section of the electric toothbrush of FIG. 1 , showing arranged in the housing thereof the drive motor with gearing and drive shaft, the storage battery for the drive motor and the charging module for the storage battery;
- FIG. 7 is a schematic view of an electric toothbrush having a magnetically coded brush attachment and a handle section with reed contacts to detect the coding according to a further preferred embodiment of the invention
- FIG. 7A is a schematic end view of the slip-on ring of the magnetically encoded brush attachment of the electric toothbrush of FIG. 7 .
- FIG. 9 is a schematic view of an electric toothbrush having an optically coded brush attachment and a handle section with optical waveguides according to a further preferred embodiment of the invention.
- FIG. 9A is a schematic end view of the slip-on ring of the optically encoded brush attachment of the electric toothbrush of FIG. 9 .
- FIG. 10 is a sectional detail view of a toothbrush similar to FIG. 9 , showing the arrangement of a light emitter and a light detector in the handle section and a coding of the brush attachment in the form of an optical waveguide, with the brush attachment and the handle section being shown in coupled condition;
- FIG. 11 is a top plan view of the optical waveguides at the end, close to the handle section, of the brush attachment of FIG. 10 ;
- FIG. 12 is a sectional detail view of a toothbrush similar to FIG. 10 , showing the arrangement of a light emitter and a light detector in the form of a single integrated component in the handle section and a coding of the brush attachment in the form of an optical waveguide, with the brush attachment and the handle section being shown in coupled condition;
- FIG. 14 is a sectional detail view of the toothbrush of FIG. 13 , showing the arrangement of the color sensor in the handle section and the color code of the brush attachment which is coupled to the handle section;
- FIG. 15 is a schematic view of an electric toothbrush having a brush attachment coded mechanically by its shape in accordance with another preferred embodiment of the invention.
- FIG. 16 is a perspective view of the toothbrush of FIG. 15 , showing the brush attachment as it is being coupled to the handle section;
- FIG. 17 is a sectional detail view of the toothbrush of FIGS. 15 and 16 , showing the arrangement of the coding projections on the brush attachment and the sensing elements in the form of electromechanical contacts for sensing the coding projections, with the brush attachment and the handle section being shown in coupled condition;
- FIG. 18 is a schematic view of an electric toothbrush having an electromagnetically coded brush attachment with a transponder bonded thereto by adhesion and a corresponding detection device in the handle section according to a further preferred embodiment of the invention
- FIG. 18A is a schematic end view of the slip-on ring of the electromagnetically encoded brush attachment of the electric toothbrush of FIG. 18 .
- FIG. 19 is a perspective view of the toothbrush of FIG. 18 ;
- FIG. 20 is a sectional detail view of a toothbrush similar to FIGS. 18 and 19 , showing the arrangement of a transponder chip in a coding ring provided at the end of the brush attachment, and a transmitter coil and a receiver coil together with an associated electronic evaluation device in the handle section, with the brush attachment and the handle section being shown in coupled condition;
- FIG. 21 is a schematic view of an electric toothbrush having a capacitively coded brush attachment and capacitor plates in the handle section to detect the coding of the brush attachment according to a further preferred embodiment of the invention
- FIG. 22 is a detail view, in longitudinal section, of the toothbrush of FIG. 21 , showing the arrangement of the dielectric portion of the brush attachment and the capacitor plates in the handle section, with the brush attachment and the handle section being shown in coupled condition;
- FIG. 23 is a detail view, in cross section, of the toothbrush taken along the line A-A of FIG. 22 , showing the arrangement of the dielectric portion of the brush attachment and the capacitor plates in the handle section;
- FIG. 24 is a sectional view of a handle section having a longitudinally displaceable drive shaft and an electromechanical sensing element for detecting the displacement of the drive shaft according to a further preferred embodiment of the invention.
- FIG. 25 is a sectional view of the handle section of FIG. 23 , showing the brush attachment in coupled condition.
- the electric toothbrush shown in the Figures has a handle section 1 with a closed housing 26 accommodating, among other components and as illustrated in FIG. 2 , in a manner known in the art an electric motor 23 , a storage battery 24 adapted to be coupled to a charging station through a charging module 25 disposed at the bottom, and a control device 27 which may possess a printed circuit board or microprocessor.
- Various brush attachments 2 are seatable upon the end of the handle section 1 .
- a coupling device 3 the brush attachment 2 can be mechanically coupled to the handle section 1 in order to transmit the driving motion of the electric motor to the bristle head 4 of the brush attachment 2 .
- the coupling device 3 comprises a positive-engagement element for positioning the cleaning tool body in its proper location and, in addition, a drive coupling which transmits the driving motion of the drive to the bristle head of the brush attachment.
- a drive shaft 28 Protruding from the end of the handle section 1 is a drive shaft 28 adapted to be driven by the drive motor 23 via a gearing 29 in a manner equally known in the art.
- the drive shaft 28 has a coupling section 30 adapted to receive by positive engagement therewith a complementary coupling section of a drive shaft arranged in the cleaning tool 2 , so that the driving motion is transmitted, enabling the bristle head 31 of the brush attachment to be driven in an oscillating manner.
- a Hall sensor 6 is provided at the coupling end of the handle section 1 in order to read, meaning identify, a magnetic coding 7 on the brush attachment 2 .
- the magnetic coding 7 is formed by a slip-on ring 8 provided at the coupling end of the brush attachment 2 .
- the slip-on ring 8 is available in a variety of colors containing, depending on the color, a different number of magnetic particles or magnetic bodies differing in number, magnetic orientation and/or magnetic field strength. As FIG. 4 shows, the slip-on ring 8 may be positioned in its proper location on the body of the brush attachment advantageously by positive engagement therewith, being in particular snap-fitted thereto.
- This connection may be constructed such that the ring 8 is securable to the body of the brush attachment in only one predetermined orientation relative thereto.
- the Hall sensor 6 in the handle section 1 supplies a signal correlating with the number of magnetic particles or the arrangement of the magnetic bodies, the value of this signal identifying the respective brush attachment 2 , and hence a specific user, and being suitable for further processing by the control device in the handle section 1 .
- the color of the slip-on-ring 8 makes it easy to remember which brush attachment 2 is assigned to which user.
- the magnetic coding 7 and the Hall sensor 6 are disposed at the coupling ends of the brush attachment and the handle section, respectively, lying advantageously opposite each other in order to enable an accurate detection to be accomplished.
- the electric toothbrushes according to the further embodiments illustrated in FlG. 5 ff. are constructed basically in the same way as the toothbrush illustrated in FIGS. 1 and 2 , so that like components are assigned like reference numerals, and the subsequent description deals only with the different implementations of the coding 7 of the brush attachments 2 and the corresponding coding detection devices 5 on the handle section 1 .
- the brush attachment 2 carries likewise a slip-on ring 8 which is available in various colors and contains magnetic particles differing in number depending on the color.
- the recognition device 5 To detect the magnetic coding of the brush attachment 2 , the recognition device 5 has an LC oscillator 9 which is disposed at the coupling end of the handle section 1 and detuned by the magnetic material in the brush attachment 2 , thereby supplying different frequencies assignable to the brush attachments or its users.
- the corresponding frequency signals are further processed by the control device in the handle section 1 in order to set the corresponding operating parameters or to process and indicate the user-specific data.
- the LC oscillator has a coil 136 and a capacitor 32 that are both disposed in the coupling end region of the handle section.
- the coil is arranged directly at the end. It may be mounted on a shoulder, or the like of a handle section chassis.
- the capacitor is positioned underneath the coil which faces the coding ring 8 . This enables the coding to be detected with precise accuracy.
- FIG. 7 shows a further embodiment of an electric toothbrush in which the slip-on ring 8 of the brush attachment 2 is provided with magnetic material only at defined locations on its circumference (cf. FIG. 7 a ).
- the recognition device 5 comprises reed contacts 10 (cf. FIG. 8 ) arranged in the handle section 1 at the handle end close to the coupling device 3 .
- reed contacts 10 cf. FIG. 8
- the slip-on ring 8 is a colored ring to make it easier for the user to identify his or her assigned brush.
- the magnetic ring 8 and the reed contacts 10 have their respective ends in relative opposite arrangement.
- FIG. 9 illustrates an embodiment of an electric toothbrush in which the brush attachment 2 is detected optically.
- the recognition device 5 comprises in the handle section 1 one or several optical waveguides 11 exiting at the coupling end of the handle section and experiencing defined interruptions or partial obstructions by the brush attachment 2 .
- the brush attachment 2 returns the light signal emitted from the optical waveguides 11 to the handle section 1 in coded form, the coded light signal being directed through optical waveguides 12 to a sensor 13 which detects whether and in which intensity light was returned and issues a corresponding recognition signal enabling the brush attachment to be assigned to a user.
- the brush attachment 2 may possess a preferably likewise colored slip-on ring 8 in which corresponding optical waveguides 14 are provided (cf. FIG.
- the light emitted from the handle section 1 through the optical waveguide 11 is reflected individually by the brush attachment 2 or a correspondingly coded slip-on ring 8 .
- the intensity of reflection a particular user can be identified.
- FIGS. 10 and 11 illustrate an advantageous variant of the toothbrush of FIG. 9 with optical coding of the brush attachment and corresponding detection of the coding by the handle section 1 .
- a light emitter 33 and in circumferentially offset position a light detector 34 which, through a light exit opening 35 and a light entrance opening 36 provided at the end of the handle housing 26 , look at the coupled brush attachment 2 .
- the light exit and light entrance openings may be closed by a transparent material to obtain a closed construction of the housing 26 .
- Both the emitter 33 and the detector 34 are connected to the control and evaluation device 27 of the handle section 1 .
- the slip-on ring 8 of the brush attachment 2 accommodates an optical waveguide 37 receiving the light emitted by the emitter 33 through a light entrance opening 38 (cf. FIG. 10 ), coding it and returning it through a light exit opening 39 in the slip-on ring 8 to the detector 34 in the handle section.
- the light may be guided in a variety of ways, particularly by reflection.
- the optical waveguide may be configured as a reflector.
- the signal issued by the light detector can be evaluated by the control device of the handle section 1 to identify the respective brush attachment.
- the optical waveguide 37 extends in the slip-on ring 8 in an approximately arcuate configuration (cf. FIG. 11 ). To increase the possibilities of coding, multiple light processing devices may be provided.
- FIG. 10 To increase the possibilities of coding, multiple light processing devices may be provided.
- Coding may be performed by selection of a particular one of multiple light detectors to which the respective optical waveguide returns the received light. Coding may also be performed by the optical waveguides modifying or processing the received light in different ways, in particular reflecting it in different intensities. This is then converted into a corresponding signal by the light detector.
- FIG. 12 shows a further variant of optical coding.
- the light emitter 41 and the light detector 42 are constructed as an integral component.
- a partition wall 43 is preferably provided to separate the light entrance and light exit openings from each other.
- the light may be coded in particular by different magnitudes of reflection.
- the embodiment of an electric toothbrush illustrated in FIGS. 13 and 14 has similar to the preceding embodiments a colored slip-on ring 8 at the end of the brush attachment 2 close to the coupling section 30 .
- the handle section 1 has as recognition device 5 a color sensor 15 disposed at the coupling end of the handle section 1 and oriented in the direction of the colored slip-on ring 8 .
- the color sensor 15 detects the color of the slip-on ring 8 , enabling the respective brush attachment or user of the toothbrush to be determined.
- the color sensor is arranged directly at the coupling end of the handle section 1 and oriented in the direction of the ring 8 when the brush attachment sits on the handle section 1 .
- the color of the slip-on ring 8 preferably has fluorescent properties or other properties increasing the light intensity, thereby enabling the color of the slip-on ring 8 to be recognized by the color sensor 15 reliably.
- FIGS. 18 to 20 illustrate a further embodiment of an electric toothbrush in which the respective brush attachment 2 is detected, i.e., identified by means of radio signals.
- the transponder stores the energy and sends a specific identification back to the detector 20 which receives said identification, identifies it by means of its electronic evaluation device 46 and delivers a corresponding signal to the control device 27 of the handle section 1 .
- the coils 44 and 45 hence serve as both transmitter and receiver facility. They are disposed in relative opposite arrangement at the ends of the brush attachment 2 and the handle section 1 , respectively (cf. FIG. 20 ).
- the identification sent back by the transponder 19 enables the brush attachment 2 , and hence its user, to be identified.
- an indentation 47 open towards the end and having the form of a longitudinally parallel groove suitable for engagement by the dielectric portion 22 of the brush attachment as it is being coupled to the handle section 1 .
- the capacitor plates 21 are disposed in the interior of the housing 26 on either side of the indentation referred to so that the dielectric comes to lie between the capacitor plates.
- FIGS. 24 and 25 illustrate a specific embodiment of the invention involving a brush attachment coded mechanically, that is, by its shape, and a mechanical detection of this coding.
- the coding of the brush attachment is part of its coupling section 48 used for coupling the drive train 49 in the brush section with the drive shaft 28 in the handle section, to be more precise, with the coupling section 30 thereof.
- FIG. 25 shows, the body of the brush attachment is seated onto a brush mount 50 of the handle section 1 with an exact fit so that the brush attachment sits firmly on the handle section 1 .
- the brush attachment is secured in place by making positive engagement with the handle section, that is, its brush mount. Axial securing can be accomplished also by frictional engagement.
- the coupling sections 48 and 30 in the drive train also make interfitting engagement.
- the coupling sections are formed by a shaft stub and a complementary recess in the form of a blind-end hole in the opposite shaft end, thus enabling the shaft stub to be an exact fit within the blind-end type shaft bore. Torque transmission takes place preferably by positive engagement.
- the brush attachment in particular the coupling section 48 , has as coding an actuating surface 55 which in coupled condition is in engagement with an associated engagement surface on the handle section 1 , in particular on the coupling section 30 of the drive shaft 28 .
- the actuating surface 55 mates with the engagement surface 56 in such manner that a predetermined interaction occurs between these two surfaces in coupled condition.
- the actuating surface 55 is arranged and aligned so as to exert a predetermined pressure on the engagement surface 56 .
- the associated engagement surface 56 is formed on a movable probe element, producing as interaction a predetermined movement of the probe element. It will be understood that it is also possible to detect a force, but a movement can be detected with greater ease. Different configurations of the actuating surfaces 56 are translated into different movements of the associated engagement surface 56 of the probe element.
- the drive shaft 28 of the handle section is advantageously used.
- the drive shaft is mounted longitudinally displaceably and preferably biased into protrusion from the handle section by means of biasing members.
- the brush attachment 2 When the brush attachment 2 is seated down on the handle section the brush attachment's actuating surface 55 urges the drive shaft 28 a predetermined distance into the interior of the handle section 1 .
- the displacement is detected by a motion sensor which may embody a variety of configurations, being operable for example as a light barrier. Other displacement sensors may also be employed.
- Preferably provision may be-made for an elastically deformable-sensing element with electromechanical contact of the type previously described with reference to FIG. 17 .
- the drive shaft 28 preferably sits with a lug, preferably with its end remote from the coupling section 30 , on the sensing element 57 .
- the sensing element may at the same time serve as biasing member. When the drive shaft 28 is pressed down, the sensing element produces a corresponding signal, in particular opening or closing a corresponding contact.
- the actuating surface 55 is formed by the bottom surface of the blind-end type recess 53 in the brush attachment's drive shaft.
- the associated engagement surface is formed by the end of the drive shaft 28 . While being reversible, this arrangement is preferably configured as illustrated.
- actuating and engagement surfaces 55 and 56 are possible.
- Other configurations may also be contemplated.
Abstract
Description
Claims (39)
Priority Applications (17)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US10/872,016 US7770251B2 (en) | 2001-03-14 | 2004-06-18 | Method and device for cleaning teeth |
US11/257,603 US7621015B2 (en) | 2001-03-14 | 2005-10-24 | Method and device for cleaning teeth |
US11/763,338 US20070234493A1 (en) | 2001-03-14 | 2007-06-14 | Dental Cleaning Device |
US11/888,250 US20080022470A1 (en) | 2001-03-14 | 2007-07-31 | Dental cleaning device |
US11/888,189 US20080028549A1 (en) | 2001-03-14 | 2007-07-31 | Dental cleaning device |
US11/888,142 US20080022501A1 (en) | 2001-03-14 | 2007-07-31 | Dental cleaning device |
US11/888,212 US7661172B2 (en) | 2001-03-14 | 2007-07-31 | Dental cleaning device |
US11/888,287 US20080022503A1 (en) | 2001-03-14 | 2007-07-31 | Dental cleaning device |
US11/888,251 US7673360B2 (en) | 2001-03-14 | 2007-07-31 | Dental cleaning device |
US11/888,249 US20080032265A1 (en) | 2001-03-14 | 2007-07-31 | Dental cleaning device |
US11/888,385 US20080020351A1 (en) | 2003-09-15 | 2007-08-01 | Method and device for cleaning teeth |
US11/888,386 US7861349B2 (en) | 2001-03-14 | 2007-08-01 | Method and device for cleaning teeth |
US11/890,083 US7774886B2 (en) | 2001-03-14 | 2007-08-03 | Method and device for cleaning teeth |
US12/831,299 US7987545B2 (en) | 2001-03-14 | 2010-07-07 | Method and device for cleaning teeth |
US12/832,389 US7985073B2 (en) | 2001-12-04 | 2010-07-08 | Method and device for cleaning teeth |
US13/165,872 US8671493B2 (en) | 2001-03-14 | 2011-06-22 | Dental cleaning device |
US13/166,894 US8443475B2 (en) | 2001-03-14 | 2011-06-23 | Method and device for cleaning teeth |
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US10/662,237 US7024717B2 (en) | 2001-03-14 | 2003-09-15 | Method and device for cleaning teeth |
US10/872,016 US7770251B2 (en) | 2001-03-14 | 2004-06-18 | Method and device for cleaning teeth |
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US11/763,338 Continuation-In-Part US20070234493A1 (en) | 2001-03-14 | 2007-06-14 | Dental Cleaning Device |
US11/888,212 Continuation-In-Part US7661172B2 (en) | 2001-03-14 | 2007-07-31 | Dental cleaning device |
US11/888,189 Continuation-In-Part US20080028549A1 (en) | 2001-03-14 | 2007-07-31 | Dental cleaning device |
US11/888,251 Continuation-In-Part US7673360B2 (en) | 2001-03-14 | 2007-07-31 | Dental cleaning device |
US11/888,249 Continuation-In-Part US20080032265A1 (en) | 2001-03-14 | 2007-07-31 | Dental cleaning device |
US11/888,250 Continuation-In-Part US20080022470A1 (en) | 2001-03-14 | 2007-07-31 | Dental cleaning device |
US11/888,287 Continuation-In-Part US20080022503A1 (en) | 2001-03-14 | 2007-07-31 | Dental cleaning device |
US11/888,142 Continuation-In-Part US20080022501A1 (en) | 2001-03-14 | 2007-07-31 | Dental cleaning device |
US11/888,386 Continuation US7861349B2 (en) | 2001-03-14 | 2007-08-01 | Method and device for cleaning teeth |
US11/888,385 Continuation US20080020351A1 (en) | 2003-09-15 | 2007-08-01 | Method and device for cleaning teeth |
US11/890,083 Continuation US7774886B2 (en) | 2001-03-14 | 2007-08-03 | Method and device for cleaning teeth |
US11/890,093 Continuation US8251969B2 (en) | 2007-08-03 | 2007-08-03 | Body adhering absorbent article |
US12/831,299 Continuation US7987545B2 (en) | 2001-03-14 | 2010-07-07 | Method and device for cleaning teeth |
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US12/831,299 Expired - Fee Related US7987545B2 (en) | 2001-03-14 | 2010-07-07 | Method and device for cleaning teeth |
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US12/831,299 Expired - Fee Related US7987545B2 (en) | 2001-03-14 | 2010-07-07 | Method and device for cleaning teeth |
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Also Published As
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PL366147A1 (en) | 2005-01-24 |
US20050000044A1 (en) | 2005-01-06 |
US7024717B2 (en) | 2006-04-11 |
ATE377394T1 (en) | 2007-11-15 |
WO2002071970A1 (en) | 2002-09-19 |
US20080010771A1 (en) | 2008-01-17 |
CN1518433A (en) | 2004-08-04 |
EP1367958A1 (en) | 2003-12-10 |
EP1367958B1 (en) | 2007-11-07 |
CN1268300C (en) | 2006-08-09 |
JP4443116B2 (en) | 2010-03-31 |
US20080020352A1 (en) | 2008-01-24 |
CY1107183T1 (en) | 2012-10-24 |
US20100325822A1 (en) | 2010-12-30 |
HK1065461A1 (en) | 2005-02-25 |
DE50113242D1 (en) | 2007-12-20 |
CA2439556A1 (en) | 2002-09-19 |
DK1367958T3 (en) | 2008-01-28 |
JP2004524100A (en) | 2004-08-12 |
CA2439556C (en) | 2011-07-12 |
US20060096046A1 (en) | 2006-05-11 |
US7621015B2 (en) | 2009-11-24 |
PT1367958E (en) | 2008-01-24 |
PL197332B1 (en) | 2008-03-31 |
US7861349B2 (en) | 2011-01-04 |
MXPA03007530A (en) | 2003-12-12 |
KR20040025668A (en) | 2004-03-24 |
US7774886B2 (en) | 2010-08-17 |
US7987545B2 (en) | 2011-08-02 |
AU2001258277B2 (en) | 2006-11-16 |
KR100735645B1 (en) | 2007-07-06 |
US20050100867A1 (en) | 2005-05-12 |
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